Ironing assembly and garment steamer

By integrating the steam generator and the guide assembly into the garment steamer and optimizing the structural design, the problem of the unreasonable layout of the steam generator is solved, the compactness of the garment steamer and efficient steam output are achieved, and the ironing effect and safety of use are improved.

CN223422997UActive Publication Date: 2025-10-10FO SHAN SHI SEN LIN KE JI YOU XIAN GONG SI
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422601469.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-10-10
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

The unreasonable layout of the steam generator of the garment steamer results in a large size and low steam output efficiency, which affects the ironing effect and ease of use.

Method used

The steam generating device and the flow guide assembly are integrated into the shell assembly, and the structural design is optimized, including multiple steam outlets, steam ducts and flow guides to form a continuous steam flow path and equipped with a temperature controller.

Benefits of technology

The compact design of the garment steamer is achieved, the steam output efficiency and ironing effect are improved, the energy consumption is reduced, and the safety and convenience of use are enhanced.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223422997U_ABST
    Figure CN223422997U_ABST
Patent Text Reader

Abstract

The utility model relates to an ironing assembly and a garment steamer, and belongs to the field of garment steamer devices. An ironing assembly comprises a shell assembly, an ironing assembly, a heating assembly and a heating assembly, and the shell assembly is provided with a mounting cavity and a steam spraying hole; the flow guide assembly is arranged on the shell assembly and located in the mounting cavity, the flow guide assembly is provided with a steam channel, and the steam channel communicates with the steam spraying holes; and the steam generation device is arranged on the flow guide assembly, the steam generation device is provided with a steam outlet end, and the steam outlet end, the steam channel and the steam spraying holes are sequentially communicated. According to the garment steamer, the steam generating device and the flow guide assembly are integrated on the shell assembly, the ironing assembly is compact in structure, and the overall size of the garment steamer is smaller. Due to the compact structural design, the steam output efficiency is higher, the flow guide assembly is provided with the steam channel, steam can be evenly distributed to the steam spraying holes, and therefore more even heat and steam output are provided in the ironing process.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of garment steamer devices, in particular to an ironing assembly and a garment steamer. Background Art

[0002] Garment steamers are common household appliances, widely used in everyday situations such as ironing clothes. One of the core components of a garment steamer is the steam generator. An irrational structural layout of the steam generator within the entire garment steamer results in a larger size. This increases the product's footprint and makes it inconvenient for users to carry and use. Furthermore, the irrational structural layout also affects the steam output efficiency of the garment steamer. Due to the suboptimal layout of the steam generator, the steam generation and output process is hindered, resulting in inefficient steam output, prolonged ironing time, and reduced ironing effectiveness. Utility Model Content

[0003] Based on this, it is necessary to provide an ironing assembly and a garment steamer to address the problem that the layout of the steam generating device of the garment steamer is unreasonable, resulting in a large size of the garment steamer and low steam output efficiency.

[0004] An ironing assembly comprises: a shell assembly, the shell assembly being provided with a mounting cavity and a steam spray hole; a flow guide assembly, the flow guide assembly being arranged on the shell assembly and located in the mounting cavity, the flow guide assembly being provided with a steam channel, the steam channel being connected to the steam spray hole; and a steam generating device, the steam generating device being arranged on the flow guide assembly, the steam generating device being provided with a steam outlet end, the steam outlet end, the steam channel and the steam spray hole being connected in sequence.

[0005] The first aspect of the present application discloses an ironing assembly. By integrating the steam generating device and the flow guide assembly on the shell assembly, the ironing assembly structure of the hanging iron is made compact, thereby helping to minimize the overall size of the hanging iron. In addition, the compact structural design makes the steam output efficiency higher, thereby improving the ironing effect of the hanging iron. The shell assembly is detachable, which is convenient for users to maintain the flow guide assembly and steam generating device in the installation cavity, thereby improving the convenience of use. The flow guide assembly is provided with a steam channel, which helps to evenly distribute the steam to the steam nozzle, thereby providing more uniform heat and steam output during the ironing process, thereby improving the ironing effect. The steam generating device is directly connected to the steam channel and the steam nozzle, which reduces the loss of steam during the transmission process and improves the energy utilization efficiency. The close fit between the flow guide assembly and the steam generator can reduce the risk of steam leakage, thereby improving safety during use.

[0006] In one embodiment, the flow guide assembly includes a first flow guide assembly, a second flow guide assembly, and a steam deflector. The first and second flow guide assemblies are respectively disposed on the housing assembly. The steam deflector is disposed on the housing assembly and / or the first flow guide assembly and is located at an end of the first flow guide assembly distal from the second flow guide assembly. The steam generator is disposed on the first flow guide assembly. The first and second flow guide assemblies are provided to guide air flow between the mounting cavity and the outside world. The steam generator is disposed on the first flow guide assembly so that air flowing through the first flow guide assembly removes heat generated by the steam generator, thereby preventing the garment steamer from overheating and shortening its service life. Placing the steam deflector at an end of the first flow guide assembly distal from the second flow guide assembly more effectively directs steam to the ironing area, thereby improving ironing efficiency. Furthermore, the structural design of the steam generator disposed on the first flow guide assembly saves space, making the entire ironing assembly more compact and reducing the overall size of the garment steamer. The integrated design of the steam generator and flow guide assembly allows users to more conveniently and quickly control steam output during use, improving operational convenience. Reasonable component layout can reduce the risk of steam leakage and improve safety in use.

[0007] In one embodiment, the first air guide assembly includes an air guide body and a steam duct, the air guide body is arranged on the shell assembly, the steam duct is arranged on the air guide body, a portion of the steam guide extends into the steam duct, and the steam outlet end of the steam generating device extends to the end of the steam duct away from the steam guide. By arranging the steam duct on the air guide body, structural optimization is achieved, which is conducive to the miniaturization of the hanging iron, and the steam duct ensures the smooth flow of steam. Part of the steam guide extends into the steam duct, so that the steam can be more concentrated and effectively transferred to the ironing surface. This design significantly improves the utilization efficiency of steam and reduces the loss of steam during the transmission process. The steam outlet end of the steam generating device extends to the end of the steam duct away from the steam guide, so that steam can be continuously and stably provided during ironing, while avoiding steam leakage and improving the safety of use.

[0008] In one of the embodiments, the steam guide member is provided with a steam passage, and the steam outlet end of the steam generating device, the steam guide pipe and the steam passage are sequentially communicated. By providing the steam guide member with a steam passage, the steam transmission efficiency is significantly improved. The steam outlet end of the steam generating device, the steam guide pipe and the steam passage are sequentially communicated, forming a continuous and smooth steam flow path. This means that the steam generated from the steam generating device can quickly and unobstructed pass through the steam guide pipe and the steam passage to reach the place where the clothes are ironed, thereby realizing efficient steam transmission and utilization. Due to the improvement of steam transmission efficiency, the amount of steam generated can be reduced under the same ironing effect, thereby reducing energy consumption.

[0009] In one of the embodiments, the number of steam outlet ends of the steam generating device is multiple, the number of steam guide pipes is multiple, the steam passage includes multiple steam branches, and the multiple steam outlet ends, the multiple steam guide pipes and the multiple steam branches are one-to-one corresponding. By providing multiple steam outlet ends and corresponding steam guide pipes, steam is supplied to multiple steam branches at the same time, so that the output efficiency of steam is higher, thereby improving the working efficiency of the entire garment steamer ironing assembly. The design of multiple steam outlet ends and steam guide pipes allows flexible adjustment of steam distribution according to different application requirements, so that the device can adapt to different working conditions and requirements.

[0010] In one of the embodiments, the steam guide member includes a guide member body and a plurality of partition plates, the guide member body is arranged on the housing assembly and / or the first guide assembly, the guide member body is provided with a steam passage and a steam outlet, the steam passage is communicated with the steam outlet, the steam outlet is arranged opposite to the steam nozzle, and the plurality of partition plates are arranged on the guide member body and located at the steam outlet. The steam passage and the steam outlet are communicated. This design allows steam to flow smoothly from the steam passage to the steam outlet, ensuring efficient transmission of steam and improving ironing efficiency. The partition plates are arranged at the steam outlet, which makes the distribution of steam at the steam outlet more uniform. This design avoids concentrated steam injection, making the heat distribution more uniform during ironing and improving the ironing quality. By optimizing the design of the steam guide member, the transmission and distribution of steam can be better controlled, thereby improving the ironing effect and making the ironed clothes more flat and smooth.

[0011] In one embodiment, the steam generating device includes a device body and a heating pipe, the device body is arranged on the shell assembly, and a portion of the heating pipe is embedded in the device body. The device body is provided with a fluid channel, and the heating pipe is used to convert water flowing through the fluid channel into steam. By embedding the heating pipe in the device body, it is convenient for the heating pipe to directly heat the water in the fluid channel to convert it into steam. In addition, setting the shape of the heating pipe to be the same as the water flow path of the fluid channel can further improve the thermal efficiency, thereby quickly converting water into steam. The fluid channel design in the device body helps to optimize the water flow path and ensure that the water is evenly heated, thereby improving the speed and efficiency of steam generation.

[0012] In one embodiment, the device body is provided with a water inlet and a steam outlet, with the water inlet, the fluid channel, and the steam outlet being sequentially connected. By integrating the water inlet and steam outlet into the device body, this design simplifies the structure of the ironing assembly, reduces the number of components, thereby lowering manufacturing costs and maintenance, and effectively preventing the risk of steam leakage. The sequential connection of the water inlet, fluid channel, and steam outlet ensures a stable steam supply during ironing, improving ironing efficiency. This also reduces the risk of steam leakage, thereby enhancing safety during use of the ironing assembly.

[0013] In one embodiment, the fluid channel includes multiple conversion branches, and the number of steam outlets is multiple, with each of the multiple steam outlets corresponding to the multiple conversion branches. This increases the efficiency of converting water into steam, thereby improving ironing efficiency. This can significantly save time for laundry that requires extensive ironing.

[0014] In one embodiment, the steam generator further includes a thermostat. This thermostat effectively monitors the operating status of the steam generator, ensuring optimal operation. This not only improves ironing efficiency but also reduces energy consumption, achieving energy conservation and environmental protection. The thermostat prevents malfunctions or accidents caused by overheating or other reasons, thereby improving the safety of the ironing process.

[0015] A garment steamer comprises: an ironing assembly as described above; a handle assembly, the handle assembly being arranged on the ironing assembly; and a water tank assembly, the water tank assembly being arranged on the handle assembly and located at an end of the handle assembly away from the ironing assembly.

[0016] The second aspect of the present application discloses a garment steamer. By integrating the ironing assembly, handle assembly, and water tank assembly, a compact design of the garment steamer is achieved, making it easy for users to carry and store. The provision of the handle assembly makes the garment steamer easy to hold and operate, improving the comfort and convenience of use. The water tank assembly is located at the end of the handle assembly away from the ironing assembly. This design helps to balance the weight of the entire machine and reduce fatigue during operation. Through a reasonable component layout, the risk of users coming into contact with high-temperature components during operation can be reduced, thereby improving safety of use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a perspective view of an ironing assembly;

[0018] Figure 2 is a cross-sectional view of the ironing assembly;

[0019] Figure 3 This is an exploded view of the ironing component;

[0020] Figure 4 It is a structural schematic diagram of the flow guide assembly and the steam generating device;

[0021] Figure 5 This is an exploded view of the diversion component;

[0022] Figure 6 is a structural schematic diagram of the first flow guide assembly and the steam generating device;

[0023] Figure 7 is a perspective view of a steam guide;

[0024] Figure 8 is a perspective view of a steam generating device;

[0025] Figure 9 It is a structural diagram of the device body and the heating tube;

[0026] Figure 10 This is a three-dimensional diagram of a garment steamer.

[0027] The corresponding relationship between the reference numerals and component names is as follows:

[0028] 1 shell assembly, 101 installation cavity, 102 steam spray hole;

[0029] 2 guide assembly, 21 first guide assembly, 211 air guide body, 212 steam conduit, 22 second guide assembly, 23 steam guide member, 231 guide member body, 232 partition plate, 201 steam channel, 202 steam outlet;

[0030] 3 steam generating device, 31 device body, 32 heating tube, 301 fluid channel;

[0031] 4 thermostats. DETAILED DESCRIPTION

[0032] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that, in the absence of conflict, the embodiments of the present application and the features therein can be combined with each other.

[0033] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0034] The ironing assembly and the garment steamer according to some embodiments of the present invention will be described below with reference to the accompanying drawings.

[0035] Example 1, as Figures 1 to 9 As shown, this embodiment discloses an ironing assembly, including: a shell assembly 1, the shell assembly 1 is provided with a mounting cavity 101 and a steam spray hole 102; a flow guide assembly 2, the flow guide assembly 2 is arranged on the shell assembly 1 and located in the mounting cavity 101, the flow guide assembly 2 is provided with a steam channel 201, and the steam channel 201 is connected to the steam spray hole 102; a steam generating device 3, the steam generating device 3 is arranged on the flow guide assembly 2, the steam generating device 3 is provided with a steam outlet end, and the steam outlet end, the steam channel 201 and the steam spray hole 102 are connected in sequence.

[0036] The first aspect of the present application discloses an ironing assembly. By integrating the steam generating device 3 and the flow guide assembly 2 on the housing assembly 1, the ironing assembly structure of the garment steamer is made compact, thereby helping to minimize the overall size of the garment steamer. In addition, the compact structural design makes the steam output efficiency higher, thereby improving the ironing effect of the garment steamer. The housing assembly 1 is detachable, which facilitates the user to maintain the flow guide assembly 2 and the steam generating device 3 in the installation cavity 101, thereby improving the convenience of use. The flow guide assembly 2 is provided with a steam channel 201, which helps to evenly distribute the steam to the steam nozzle 102, thereby providing more uniform heat and steam output during the ironing process, thereby improving the ironing effect. The steam generating device 3 is directly connected to the steam channel 201 and the steam nozzle 102, reducing the loss of steam during the transmission process and improving energy utilization efficiency. The close fit between the flow guide assembly 2 and the steam generator 3 can reduce the risk of steam leakage, thereby improving safety during use.

[0037] like Figure 4 and Figure 5As shown, in addition to the features of the above-mentioned embodiment, this embodiment further defines: the flow guide assembly 2 includes a first flow guide assembly 21, a second flow guide assembly 22, and a steam guide 23. The first flow guide assembly 21 and the second flow guide assembly 22 are respectively disposed on the housing assembly 1. The steam guide 23 is disposed on the housing assembly 1 and / or the first flow guide assembly 21 and is located at the end of the first flow guide assembly 21 away from the second flow guide assembly 22. The steam generator 3 is disposed on the first flow guide assembly 21. The first flow guide assembly 21 and the second flow guide assembly 22 guide air between the installation cavity 101 and the outside world. The steam generator 3 is disposed on the first flow guide assembly 21 so that air flowing through the first flow guide assembly 21 can remove heat generated by the steam generator 3, thereby preventing the garment steamer from overheating and shortening its service life. The placement of the steam guide 23 at the end of the first flow guide assembly 21 away from the second flow guide assembly 22 can more effectively direct steam to the ironing area, thereby improving ironing efficiency. Furthermore, the steam generator 3, positioned within the first flow guide assembly 21, saves space, making the entire ironing assembly more compact and reducing the overall size of the garment steamer. The integrated design of the steam generator 3 and flow guide assembly 2 allows users to more conveniently and quickly control steam output, improving operational convenience. A rational component layout reduces the risk of steam leakage and enhances safety.

[0038] like Figure 5 and Figure 6 As shown, in addition to the features of the above-mentioned embodiment, this embodiment further defines: the first air guide assembly 21 includes an air guide body 211 and a steam conduit 212. The air guide body 211 is disposed on the housing assembly 1, and the steam conduit 212 is disposed on the air guide body 211. A portion of the steam guide 23 extends into the steam conduit 212, and the steam outlet of the steam generator 3 extends to the end of the steam conduit 212 away from the steam guide 23. The provision of the steam conduit 212 on the air guide body 211 optimizes the structure, facilitating the miniaturization of the garment steamer. The steam conduit 212 ensures smooth steam flow. The portion of the steam guide 23 extending into the steam conduit 212 allows for more concentrated and efficient steam delivery to the ironing surface. This design significantly improves steam utilization efficiency and reduces steam loss during delivery. The steam outlet of the steam generator 3 extends to the end of the steam conduit 212 away from the steam guide 23, ensuring a continuous and stable supply of steam during ironing, while also preventing steam leakage and improving user safety.

[0039] like Figure 2 、 Figure 3 and Figure 7As shown, in addition to the features of the above-mentioned embodiment, this embodiment further defines that: the steam guide 23 is provided with a steam channel 201, and the steam outlet end of the steam generating device 3 and the steam conduit 212 are connected to the steam channel 201 in sequence. The steam channel 201 is provided through the steam guide 23, and this design significantly improves the efficiency of steam transmission. The steam outlet end of the steam generating device 3, the steam conduit 212 and the steam channel 201 are connected in sequence, forming a continuous and smooth steam flow path. This means that the steam generated from the steam generating device can quickly and unimpededly pass through the steam conduit and the steam channel to the place where the clothes are ironed, thereby achieving efficient steam transmission and utilization. Due to the improvement in steam transmission efficiency, the amount of steam generated can be reduced under the same ironing effect, thereby reducing energy consumption.

[0040] like Figure 6 As shown, in addition to the features of the above-mentioned embodiment, this embodiment further defines: the steam generating device 3 has multiple steam outlets, the steam conduits 212 are multiple, and the steam channel 201 includes multiple steam branches, with the multiple steam outlets, the multiple steam conduits 212, and the multiple steam branches corresponding one to one. By providing multiple steam outlets and corresponding steam conduits 212, steam is supplied to multiple steam branches simultaneously, making steam output more efficient, thereby improving the operating efficiency of the entire garment steamer's ironing assembly. The design of multiple steam outlets and steam conduits allows for flexible adjustment of steam distribution according to different application requirements, allowing the device to adapt to different working conditions and requirements.

[0041] like Figure 7 As shown, in addition to the features of the above-mentioned embodiment, this embodiment further defines: the steam deflector 23 includes a deflector body 231 and a plurality of partitions 232. The deflector body 231 is disposed on the housing assembly 1 and / or the first deflector assembly 21. The deflector body 231 is provided with a steam channel 201 and a steam outlet 202. The steam channel 201 is connected to the steam outlet 202, and the steam outlet 202 is disposed opposite the steam spray hole 102. The plurality of partitions 232 are spaced apart on the deflector body 231 and located at the steam outlet 202. The deflectors 232 are connected to the steam outlet 202 through the steam channel 201. This design allows steam to flow smoothly from the steam channel to the steam outlet, ensuring efficient steam transmission and improving ironing efficiency. The partitions 232 are spaced apart at the steam outlet 202, ensuring more uniform steam distribution at the steam outlet 202. This design avoids concentrated steam injection, resulting in more uniform heat distribution during ironing and improved ironing quality. By optimizing the design of the steam guide 23, the transmission and distribution of steam can be better controlled, thereby improving the ironing effect and making the clothes flatter and smoother after ironing.

[0042] like Figure 8 and Figure 9As shown, in addition to the features of the above-mentioned embodiment, this embodiment further defines that the steam generating device 3 includes a device body 31 and a heating pipe 32. The device body 31 is arranged on the housing assembly 1, and a portion of the heating pipe 32 is embedded in the device body 31. The device body 31 is provided with a fluid channel 301, and the heating pipe 32 is used to convert water flowing through the fluid channel 301 into steam. By embedding the heating pipe 32 in the device body 31, it is convenient for the heating pipe 32 to directly heat the water in the fluid channel 301 and convert it into steam. In addition, the shape of the heating pipe 32 is arranged to be the same as the water flow path of the fluid channel 301, which can further improve thermal efficiency, thereby quickly converting water into steam. The design of the fluid channel 301 in the device body 31 helps to optimize the water flow path, ensure that the water is evenly heated, and thus improve the speed and efficiency of steam generation.

[0043] like Figure 9 As shown, in addition to the features of the above-mentioned embodiment, this embodiment further defines: the device body 31 is provided with a water inlet and a steam outlet, and the water inlet, fluid channel 301, and steam outlet are sequentially connected. By integrating the water inlet and steam outlet into the device body 31, this design simplifies the structure of the ironing assembly, reduces the number of components, thereby lowering manufacturing costs and maintenance, and effectively preventing the risk of steam leakage. The water inlet, fluid channel 301, and steam outlet are sequentially connected. This continuous fluid channel design ensures a stable supply of steam during ironing, improving ironing efficiency. It also reduces the risk of steam leakage, thereby enhancing safety when using the ironing assembly.

[0044] like Figure 9 As shown, in addition to the features of the above-mentioned embodiment, this embodiment further defines that the fluid channel 301 includes multiple conversion branches, with multiple steam outlets, each corresponding to a single conversion branch. This correspondence between multiple steam outlets and multiple conversion branches improves the efficiency of converting water into steam, thereby increasing ironing efficiency. This can significantly save time for laundry that requires extensive ironing.

[0045] like Figure 8 As shown, in addition to the features of the above-mentioned embodiment, this embodiment further comprises a thermostat 4 disposed on the steam generator 3. The thermostat 4 effectively monitors the operating status of the steam generator 3, ensuring its optimal operation. This not only improves ironing efficiency but also reduces energy consumption, achieving energy conservation and environmental protection. The thermostat 4 prevents malfunctions or accidents caused by overheating or other reasons in the steam generator 3, thereby improving the safety of the ironing process.

[0046] Example 2, as Figures 1 to 10As shown, this embodiment discloses a hanging steamer, comprising: an ironing assembly as described above; a handle assembly, the handle assembly being arranged on the ironing assembly; and a water tank assembly, the water tank assembly being arranged on the handle assembly and being located at one end of the handle assembly away from the ironing assembly.

[0047] The second aspect of the present application discloses a garment steamer. By integrating the ironing assembly, handle assembly, and water tank assembly, a compact design of the garment steamer is achieved, making it easy for users to carry and store. The provision of the handle assembly makes the garment steamer easy to hold and operate, improving the comfort and convenience of use. The water tank assembly is located at the end of the handle assembly away from the ironing assembly. This design helps to balance the weight of the entire machine and reduce fatigue during operation. Through a reasonable component layout, the risk of users coming into contact with high-temperature components during operation can be reduced, thereby improving safety of use.

[0048] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0049] The above-described embodiments merely represent several implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present utility model patent shall be determined by the appended claims.

Claims

1. An ironing assembly, characterized in that: include: A housing assembly (1), wherein the housing assembly (1) is provided with a mounting cavity (101) and a steam spray hole (102); A flow guide assembly (2), the flow guide assembly (2) being arranged on the housing assembly (1) and located in the installation cavity (101), the flow guide assembly (2) being provided with a steam channel (201), the steam channel (201) being in communication with the steam spray hole (102); A steam generating device (3), the steam generating device (3) being arranged on the flow guide assembly (2), the steam generating device (3) being provided with a steam outlet, the steam outlet, the steam channel (201) and the steam spray hole (102) being sequentially connected; The flow guide assembly (2) comprises a first flow guide assembly (21), a second flow guide assembly (22) and a steam flow guide member (23); the first flow guide assembly (21) and the second flow guide assembly (22) are respectively arranged on the shell assembly (1); the steam flow guide member (23) is arranged on the shell assembly (1) and / or the first flow guide assembly (21), and is located at an end of the first flow guide assembly (21) away from the second flow guide assembly (22); and the steam generating device (3) is arranged on the first flow guide assembly (21).

2. The ironing assembly according to claim 1, characterized in that The first flow guide assembly (21) comprises an air guide body (211) and a steam conduit (212); the air guide body (211) is arranged on the shell assembly (1); the steam conduit (212) is arranged on the air guide body (211); a portion of the steam flow guide (23) extends into the steam conduit (212); and the steam outlet end of the steam generating device (3) extends to an end of the steam conduit (212) away from the steam flow guide (23).

3. The ironing assembly according to claim 2, characterized in that The steam guide member (23) is provided with a steam channel (201), and the steam outlet end of the steam generating device (3), the steam conduit (212) and the steam channel (201) are sequentially connected; And / or the steam generating device (3) has a plurality of steam outlet ends, the steam conduits (212) have a plurality of steam outlet ends, the steam channel (201) includes a plurality of steam branches, and the plurality of steam outlet ends, the plurality of steam conduits (212) and the plurality of steam branches correspond one to one.

4. The ironing assembly according to claim 1, characterized in that The steam guide member (23) comprises a guide member body (231) and a plurality of partition plates (232); the guide member body (231) is arranged on the shell assembly (1) and / or the first guide assembly (21); the guide member body (231) is provided with a steam channel (201) and a steam outlet (202); the steam channel (201) is communicated with the steam outlet (202); the steam outlet (202) is arranged opposite to the steam spray hole (102); and the plurality of partition plates (232) are arranged at intervals on the guide member body (231) and are located at the steam outlet (202).

5. The ironing assembly according to claim 1, characterized in that The steam generating device (3) comprises a device body (31) and a heating pipe (32); the device body (31) is arranged on the housing assembly (1); a portion of the heating pipe (32) is embedded in the device body (31); the device body (31) is provided with a fluid channel (301); and the heating pipe (32) is used to convert water flowing through the fluid channel (301) into steam.

6. The ironing assembly according to claim 5, characterized in that The device body (31) is provided with a water inlet end and a steam outlet end, and the water inlet end, the fluid channel (301) and the steam outlet end are sequentially connected.

7. The ironing assembly according to claim 6, characterized in that The fluid channel (301) includes a plurality of conversion branches, and the number of the steam outlet ends is multiple, and the multiple steam outlet ends correspond one-to-one to the multiple conversion branches.

8. The ironing assembly according to claim 1, characterized in that It also includes a temperature controller (4), which is arranged on the steam generating device (3).

9. A garment steamer, characterized in that: include: The ironing assembly according to any one of claims 1 to 8; a handle assembly, the handle assembly being arranged on the ironing assembly; A water tank assembly is provided on the handle assembly and is located at an end of the handle assembly away from the ironing assembly.